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首页> 外文期刊>European Polymer Journal >A simple environment-friendly process for preparing high-concentration alkali lignin nanospheres
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A simple environment-friendly process for preparing high-concentration alkali lignin nanospheres

机译:一种简单的环保方法,用于制备高浓度碱木质素纳米球

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Biomass nanomaterials based on aromatic ring monomers have broad application prospects in the fields of drug delivery, catalysis and environment. In this paper, based on the effective dissolution of commercial alkali lignin in imidazole ionic liquids, lignin nanospheres were rapidly prepared by adding anti-solvent of water. In the three imidazole ionic liquids (1-amyl-3-methylimidazolium acetate (C5mim][Ac]), 1-butyl-3methylimidazolium acetate ([Bmim] [Ac]) and 1-ethyl-3-methylimidazolium acetate ([Emim] [Ac])), lignin can dissolve well, and the dissolution rates are all > 25%, which is much higher than other organic solvents. And the longer the alkyl chain in imidazole ring is, the lower the solubility of lignin is. The paper also studied the effects of lignin concentration, the addition rate of anti-solvent, stirring rate and pH on the size of lignin nanospheres. It was found that the lignin nanospheres prepared under suitable conditions have particle size in the range of 52-210 nm and have good stability for over two months. And, compared to other studied, the particle size of the nanospheres is much smaller and easier to control. Moreover, the quality of lignin nanospheres was elucidated by Fourier transform infrared spectroscopy (FT-IR), Gel permeation chromatography (GPC) and UV-vis spectroscopy (UV-Vis) measurements which found the molecular weight of lignin nanospheres was slightly lower the raw alkali lignin, and the main structure of the aromatic ring of lignin is preserved in the process of preparation of the nanospheres by ILs. The method of preparing lignin nanosphere from lignin-ionic liquids solution with water as anti-solvent is simple, rapid and environmentally friendly, and provides an efficient and feasible path for the high value utilization of lignin.
机译:基于芳香环单体的生物质纳米材料在药物递送,催化和环境领域具有广泛的应用前景。本文基于咪唑离子液体中商业碱木质素的有效溶解,通过加入水的抗溶剂迅速制备木质素纳米球。在三种咪唑离子液体(1-淀粉-3-甲基咪唑鎓乙酸盐(C5mim] [AC])中,1-丁基-3甲基咪唑乙酸铵([Bmim] [AC])和1-乙基-3-甲基咪唑乙酸铵([emim] [ac])),木质素可以溶解良好,溶解率均为25%,其远高于其他有机溶剂。咪唑环中的烷基链越长,木质素的溶解度越低。本文还研究了木质素浓度的影响,抗溶剂,搅拌速率和pH值的抗木质素纳米球的效果。发现在合适条件下制备的木质素纳米球在52-210nm的范围内具有粒度,并且具有良好的稳定性超过两个月。而且,与其他研究相比,纳米球的粒径要小得多,更容易控制。此外,通过傅里叶变换红外光谱(FT-IR),凝胶渗透色谱(GPC)和UV-Vis光谱(UV-Vis)测量阐明了木质素纳米球的质量,发现木质素纳米球的分子量略低于原料碱木质素和木质素的芳香环的主要结构在通过ILS制备纳米球的过程中。从木质素离子液体溶液用水作为抗溶剂制备木质素纳米球的方法简单,快速,环保,为木质素的高价值利用提供了一种有效和可行的路径。

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